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Blast Optimization Through Drilling Information: GBlast®, a Predictive Modeling SoftwareBy Claudio Lechuga, Carlos Scherpenisse, Juan Rafael Otaiza
From the analysis of drilling process, Block Model information, drilling pattern data and expected fragmentation targets; GBlast® software optimizes the explosive charge design in order to standardize
Feb 1, 2020
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Mountain Mass Surrenders to Man's Initiative & DaringBy Yogesh Narula
Nevis Bluff Landslide - On September 17” 2000, a rockfall measuring lO,OOOm3 at Nevis Bluff, New Zealand, triggered a loday emergency. It ended when a hazardous column of rock that towered over State
Jan 1, 2002
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Electronic Detonator Timing Approaches for Surface Quarries and Metals MinesBy Tristan Worsey, Nathan Rouse, Evan Thibaud
Electronic detonators allow for variability and accuracy with blast delay selection and timing sequence. However, a single published guideline for selection of electronic timing delays is not availabl
Jan 21, 2025
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Blasting Near a CrusherBy Scott G. Giltner, Alex Schwenk
Blasting within 250 ft of a crusher was successfully executed through the application of electronic detonators, 3-D imagery, signature hole analysis, custom loading of blast holes. The blast was well
Feb 1, 2020
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Modeling Reactive Sulfide Rock at the Red Dog MineBy Norman Paley, Zachary Pickett
The Red Dog Mine is a high-grade zinc-lead mine located in northwest Alaska which began operations in November 1989. In June 2014 the upper half of a charge in a trim shot in the Aqqaluk pit deflagrat
Feb 1, 2020
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Blasting Next to an Unsupported Road using Electronic DetonatorsBy Tony Rorke, Sydney Thabethe
A large overburden blast was carried out at Douglas Colliery, Middelburg Mine Services, close to a national road in South Africa. The road is a busy route between Witbank and Bethal and damage to the
Jan 1, 2004
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A Method for Site-Specific Prediction and Control of Ground Vibration from BlastingBy Andrew P. Ritter, James W. Reil, Douglas A. Anderson, Stephen R. Winzer
We have developed a method for predicting and controlling ground vibration from blasting using a rigorous scientific approach. The method is based upon the superposition of seismic waveforms generated
Jan 1, 1985
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Valdez, Alaska Glacier Point Quarry – One Shot / One Chance for SuccessBy Billy Rosseau, Mike Cammack, Richard O’Meara, Gustavo Azpilcueta
During the summer of 2014, the U.S. Army Corps of Engineers (USACE) sought proposals to vastly improve and expand the small boat harbor in Valdez, Alaska. It would be a multi-year project, and constru
Jan 1, 2017
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Diagnosing and Modifying Off-Site Blast Effects by Seismic Means - A Case StudyBy Stuart Brashear, Robert Brush, Ben Cook
In early 1993, the Piney River quarry owned and operated by the Blue Ridge Stone Corporation of W.W. Boxley, received a series of complaints from the owners of a 130 year-old historic farmhouse that h
Jan 1, 1995
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Full Wall Control Blasting OptimizationBy John Floyd, Maria Rocha, Benjamin Cebrian
Wall control blasting is needed in most metal mining operations in terms of increasing mineral reserves and assuring the safety of the operation. This type of blasting has the goal to achieve a clean,
Jan 1, 2018
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Performing decking with the use of an inflatable plug in high or total submergence applications in blastholes to improve final wall profile & stabilityBy Glenn Tobin
The overarching goal in modern drill and blasting operations is that of optimising mining operations to achieve higher levels of productivity, safety, profitability and sustainability. Air decking, a
Jan 1, 2012
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An Explosive Delivery System implementation in the Steep Gullies at the Arapahoe Basin Ski AreaBy Mark Bosse
This is a paper demonstrating the use of a fixed wire and trolley system to deliver 2 or 5 lb cast primers (with 2 meter cap/fuse assemblies) deep into avalanche terrain. This avalanche terrain is mi
Feb 1, 2020
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Journal: Kaiser Plant Demolition / Smokestack Demolition at port of Tacoma, WashingtonBy Walt Meglasson
The Kaiser Aluminum Company Smelter, one of several in the Pacific Northwest, was built in 1942 and operated by the Olin Company during World War II and then purchased by Kaiser Aluminum after the war
Jan 1, 2008
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Maximizing Mining Recovery Through Advanced Blasting Techniques and Blast Movement ManagementBy Aris Tambunan, Nella Lubis, Nurafrianti Saala, Komang Widhiayanto, Herry Saputra, Rudolf Sitorus
Maximizing mining recovery rates and minimizing ore loss are pivotal objectives for economic efficiency and operational effectiveness. This study explores methods to address these imperatives by enhan
Jan 21, 2025
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Sustainable productivity in the exploitation processes of a mining site adjacent to communitiesBy J. Aravena, S. Gajardo, M. Ayala, P. Salinas
Both, Teck Carmen de Andacollo (Teck CDA) and Orica, work hard in the implementation of new technologies available in the explosives industry and drilling and blasting techniques, with the objective o
Jan 1, 2024
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SmokeFCM: Segmentation of Quarry Blast Smoke Plumes using Self-Adaptive Weighted Fuzzy C-MeansBy E. Lentilucci, A. Dey, X. Liu, A. Datta, S. Ghosh
The segmentation of quarry blast smoke plumes is a crucial research area that has the potential to enhance safety, environmental monitoring, object detection, and regulatory compliance in the mining i
Jan 1, 2024
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Drilling and Blasting in Hot and Reactive Ground Conditions at Barrick Goldstrike's Meikle MineBy D. Scott Scovira, Remi Proulx
The Meikle Mine is a high grade, underground gold mine utilizing primary-secondary longhole open stoping with delayed backfill to produce 3000 stpd of ore. Hot and reactive ground conditions were enco
Jan 1, 2000
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Demolition Blast of Heavily Reinforced Concrete Slab on Impermeable LayerBy Ye Yuan, Jaak Daemen, Shaguo Yuan
ABSTRACT: A 400m2 (480 yd2) heavily reinforced high-strength concrete slab 800mm (31 inch) thick had to be demolished. Underneath it was a 300mm (12 inch) thick underlying structure consisting of thre
Jan 1, 2010
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Drone Technology Utilization to Increase Safety and Support Analysis for Blasting ProcessBy Ery Wardhana, Stefanus Jagad, Relinda Sanistya, Hasucita Tausi, Rido Situmorang
The blasting process is one of the most high-risk activities in mining operations. Shotfirers and blasting crews face hazards from slope failure, toxic gas and fumes, or unstable ground condition ever
Feb 6, 2023
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Journal: Safety Talk / Crisis ManagementBy William Reisz
The explosives and blasting industry has a commendable safety and security record, especially over the last several decades. This is due in large part to our newer technologies, better training and ed
Jan 1, 2012